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The A20B-2000-0590 is a printed circuit board designed for the FANUC Series 20. This unit is made with FR4 material and features a metal side bracket for rack mounting.
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| Manufacturer | FANUC |
|---|---|
| Product Type | Printed Circuit Board |
| Product Line | Series 20 |
| Part Number | A20B-2000-0590 |
| Weight | 1.00 lbs (0.45 kg) |
| Material | FR4 |
| Mounting Type | Metal Side Bracket for Rack Mounting |
| Edge Connector | Gold Plated Multi Pin Backplane Connector |
| Processor | 32-bit Micro Controller |
| Memory Type | EPROM, RAM |
| Connector Type | Pin Connectors |
| Number of Pins | 14 |
| Voltage Regulators | 3-terminal regulators |
| Oscillator | Metal Can Crystal Oscillator |
| Ferrite Beads | EMI Suppression |
| Maximum Ambient Temperature | 40 degrees Celsius |
| Minimum Ambient Temperature | 0 degrees Celsius |
| Maximum Operating Humidity | 80% (non-condensing) |
| Maximum Storage Humidity | 80% (non-condensing) |
FANUC's part number A20B-2000-0590 is a printed circuit board specifically fabricated for the Series 20 line. Crafted from robust FR4 material, this circuit board is secured using a metal side bracket, designed to facilitate rack mounting. Featuring a gold-plated multi-pin backplane connector, it ensures reliable connectivity.
The board utilizes a 32-bit microcontroller for processing tasks, alongside memory architectures that include both EPROM and RAM. Pin connectors facilitate connection to other components, with a configuration that includes 14 pins.
The unit incorporates 3-terminal voltage regulators to stabilize voltage supply and employs a metal can crystal oscillator for precise timing. In addition, ferrite beads are included for electromagnetic interference (EMI) suppression, enhancing operational integrity.
Operationally, this circuit board can withstand a maximum ambient temperature of 40 degrees Celsius while functioning effectively in conditions ranging from a minimum temperature of 0 degrees Celsius. Furthermore, it is designed to maintain functionality at humidity levels of 80% or less without condensation, both during operation and in storage situations. This design feature enhances its applicability in various settings where moisture might be a concern.